Description
This course delivers a comprehensive and practical foundation in the hot rolling of steel products, covering the transformation of slabs, billets, and blooms into flat, long, rod, rail, and strip products. Learners engage with technical principles such as rolling load, torque, and temperature control, while also mastering the use of TMCR strategies, rolling mill design, and interleaving for production efficiency. Dimensional control, defect prevention, and surface finishing are explored across both low-speed and high-speed mill environments. The course integrates industrial case examples and equipment-specific scenarios, providing a hands-on understanding of how modern steel plants manage productivity, product quality, and mechanical performance. Ideal for metallurgical engineers, steel production technicians, mechanical engineers, and vocational professionals seeking to optimize rolling processes or transition into high-skill manufacturing roles.
Course content
Learning Outcomes
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Understands the fundamental principles of heat treatment, including the effects of temperature, time, and cooling rate on steel properties.3
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Understands the fundamental principles of heat treatment, including the effects of temperature, time, and cooling rate on steel properties.3
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Understands the fundamental principles of heat treatment, including the effects of temperature, time, and cooling rate on steel properties.3
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Familiar with the basic concepts of hot rolling, such as the conversion of steel slabs or billets into various shapes and sizes through high-temperature deformation.3
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Familiar with the basic concepts of hot rolling, such as the conversion of steel slabs or billets into various shapes and sizes through high-temperature deformation.3
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Familiar with the basic concepts of hot rolling, such as the conversion of steel slabs or billets into various shapes and sizes through high-temperature deformation.3
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Familiar with the basic concepts of hot rolling, such as the conversion of steel slabs or billets into various shapes and sizes through high-temperature deformation.3
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Familiar with the basic concepts of hot rolling, such as the conversion of steel slabs or billets into various shapes and sizes through high-temperature deformation.3
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Familiar with the basic concepts of hot rolling, such as the conversion of steel slabs or billets into various shapes and sizes through high-temperature deformation.3
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Perform manufacturing processes and corrective actions following standard procedures.3
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Perform manufacturing processes and corrective actions following standard procedures.3
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Perform manufacturing processes and corrective actions following standard procedures.3
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Perform manufacturing processes and corrective actions following standard procedures.3
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Perform manufacturing processes and corrective actions following standard procedures.3
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Perform manufacturing processes and corrective actions following standard procedures.3
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Perform manufacturing processes and corrective actions following standard procedures.3
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Applies fundamental mathematical concepts in engineering contexts.3
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Determines appropriate metal forming processes and develops production plans.3
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Determines appropriate metal forming processes and develops production plans.3
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Determines appropriate metal forming processes and develops production plans.3
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Determines appropriate metal forming processes and develops production plans.3
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Determines appropriate metal forming processes and develops production plans.3
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Interpret process engineering design principles and standards.3
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Recognizes common steel products like sheets, rods, and beams.3
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Recognizes common steel products like sheets, rods, and beams.3
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Recognizes common steel products like sheets, rods, and beams.3
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Recognizes common steel products like sheets, rods, and beams.3
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Recognizes common steel products like sheets, rods, and beams.3
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Recognizes common steel products like sheets, rods, and beams.3
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Able to explain basic thermodynamic principles, such as the first and second laws of thermodynamics.3
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